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Wnt 配体在 C. elegans 胚胎中的扩散传递极性信息。

Transfer of polarity information via diffusion of Wnt ligands in C. elegans embryos.

机构信息

Aix Marseille University, CNRS, IBDM, Turing Centre for Living Systems, Marseille, France.

Aix Marseille University, CNRS, IBDM, Turing Centre for Living Systems, Marseille, France.

出版信息

Curr Biol. 2024 May 6;34(9):1853-1865.e6. doi: 10.1016/j.cub.2024.03.030. Epub 2024 Apr 10.

DOI:10.1016/j.cub.2024.03.030
PMID:38604167
Abstract

Different signaling mechanisms concur to ensure robust tissue patterning and cell fate instruction during animal development. Most of these mechanisms rely on signaling proteins that are produced, transported, and detected. The spatiotemporal dynamics of signaling molecules are largely unknown, yet they determine signal activity's spatial range and time frame. Here, we use the Caenorhabditis elegans embryo to study how Wnt ligands, an evolutionarily conserved family of signaling proteins, dynamically organize to establish cell polarity in a developing tissue. We identify how Wnt ligands, produced in the posterior half of the embryos, spread extracellularly to transmit information to distant target cells in the anterior half. With quantitative live imaging and fluorescence correlation spectroscopy, we show that Wnt ligands diffuse through the embryo over a timescale shorter than the cell cycle, in the intercellular space, and outside the tissue below the eggshell. We extracted diffusion coefficients of Wnt ligands and their receptor Frizzled and characterized their co-localization. Integrating our different measurements and observations in a simple computational framework, we show how fast diffusion in the embryo can polarize individual cells through a time integration of the arrival of the ligands at the target cells. The polarity established at the tissue level by a posterior Wnt source can be transferred to the cellular level. Our results support a diffusion-based long-range Wnt signaling, which is consistent with the dynamics of developing processes.

摘要

不同的信号机制共同作用,以确保动物发育过程中组织模式和细胞命运指令的稳健性。这些机制大多依赖于信号蛋白的产生、运输和检测。信号分子的时空动态很大程度上是未知的,但它们决定了信号活性的空间范围和时间框架。在这里,我们使用秀丽隐杆线虫胚胎来研究 Wnt 配体(一种进化上保守的信号蛋白家族)如何动态组织以在发育组织中建立细胞极性。我们确定了 Wnt 配体如何在胚胎的后半部分产生,然后扩散到细胞外,将信息传递到前半部分的遥远靶细胞。通过定量活细胞成像和荧光相关光谱,我们表明 Wnt 配体在细胞周期内通过细胞间隙扩散,扩散速度快于细胞周期,扩散在卵壳下方的组织外进行。我们提取了 Wnt 配体及其受体 Frizzled 的扩散系数,并对它们的共定位进行了表征。我们将不同的测量和观察结果整合到一个简单的计算框架中,展示了快速扩散如何通过将配体到达靶细胞的时间积分来使单个细胞极化。由后 Wnt 源在组织水平上建立的极性可以转移到细胞水平。我们的结果支持基于扩散的长距离 Wnt 信号,这与发育过程的动力学一致。

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